Primitive hematopoietic progenitors within mobilized blood are spared by uncontrolled rate freezing

被引:0
|
作者
D Cilloni
D Garau
E Regazzi
G Sammarelli
B Savoldo
C Caramatti
L Mangoni
V Rizzoli
C Carlo-Stella
机构
[1] University of Parma,Department of Hematology
来源
关键词
cryopreservation; blood stem cell transplantation; colony-forming cells; LTC-IC; PBPC;
D O I
暂无
中图分类号
学科分类号
摘要
Uncontrolled-rate freezing techniques represent an attractive alternative to controlled-rate cryopreservation procedures which are time-consuming and require high-level technical expertise. In this study, we report our experience using uncontrolled-rate cryopreservation and mechanical freezer storage at −140°C. Twenty-eight PBPC samples (10 cryovials, 18 freezing bags) from 23 patients were cryopreserved in a cryoprotectant solution composed of phosphate-buffered saline (80%, v/v) supplemented with human serum albumin (10%, v/v) and dimethylsulfoxide (10%, v/v). The cryopreservation procedure required on average 1.5 h. The mean (± s.e.m.) storage time of cryovials and bags was 344 ± 40 and 299 + 57 days, respectively. Although cell thawing was associated with a statistically significant reduction of the absolute number of nucleated cells (vials: 0.3 × 109vs 0.2 × 109, P ⩽ 0.02; bags: 14 × 109vs 11 × 109, P ⩽ 0.0003), the growth of committed progenitors was substantially unaffected by the freezing–thawing procedure, with mean recoveries of CFU-Mix, BFU-E, and CFU-GM ranging from 60 ± 29% to 134 ± 15%. Mean recoveries of LTC-IC from cryovials and bags were 262 ± 101% and 155 ± 27% (P ⩽ 0.2), respectively. In 14 out of 23 patients who underwent high-dose chemotherapy and PBPC reinfusion, the pre- and post-freezing absolute numbers of hematopoietic progenitors cryopreserved in bags were compared. A significant reduction was detected for CFU-Mix (11 vs 7.4 × 105), but no significant loss of BFU-E (180 vs 150 × 105), CFU-GM (400 vs 290 × 105) and LTC-IC (15 vs 16 × 105) could be demonstrated. When these patients were reinfused with uncontrolled-rate cryopreserved PBPC, the mean number of days to reach 1 × 109/l white blood cells and 50 × 109/l platelets were 9 and 13, respectively. In conclusion, the procedure described here is characterized by short execution time, allows a substantial recovery of primitive and committed progenitors and is associated with prompt hematopoietic recovery following myeloablative therapy even after long-term storage.
引用
收藏
页码:497 / 503
页数:6
相关论文
共 50 条
  • [21] Recovery of cord blood hematopoietic progenitors after successive freezing and thawing procedures.
    Timeus, F
    Crescenzio, N
    Saracco, P
    Doria, A
    Fazio, L
    Albiani, R
    Incarbone, E
    BLOOD, 2001, 98 (11) : 181A - 181A
  • [22] Soluble stromal factors enhance gene transfer in primitive human hematopoietic cells in mobilized peripheral blood
    van der Loo, JCM
    Eaton, KS
    EXPERIMENTAL HEMATOLOGY, 2000, 28 (07) : 33 - 33
  • [23] LOW C-KIT EXPRESSION BY PRIMITIVE HEMATOPOIETIC PROGENITORS IN UMBILICAL-CORD BLOOD
    KAWASHIMA, I
    LAVER, JH
    LEARY, AG
    OGAWA, M
    BLOOD, 1994, 84 (10) : A271 - A271
  • [24] Quantitation of primitive and lineage-committed progenitors in mobilized peripheral blood for prediction of platelet recovery post autologous transplant
    Hogge, DE
    Lambie, K
    Sutherland, HJ
    Benny, WB
    Dalal, B
    Currie, C
    Barnett, MJ
    Eaves, AC
    Eaves, CJ
    BONE MARROW TRANSPLANTATION, 2000, 25 (06) : 589 - 598
  • [25] Quantitation of primitive and lineage-committed progenitors in mobilized peripheral blood for prediction of platelet recovery post autologous transplant
    DE Hogge
    K Lambie
    HJ Sutherland
    WB Benny
    B Dalal
    C Currie
    MJ Barnett
    AC Eaves
    CJ Eaves
    Bone Marrow Transplantation, 2000, 25 : 589 - 598
  • [26] Optimization of retroviral gene transduction of mobilized primitive hematopoietic progenitors by using thrombopoietin, Flt3, and Kit ligands and RetroNectin culture
    Murray, L
    Luens, K
    Tushinski, R
    Jin, L
    Burton, M
    Chen, JY
    Forestell, S
    Hill, B
    HUMAN GENE THERAPY, 1999, 10 (11) : 1743 - 1752
  • [27] In vitro proliferation and expansion of hematopoietic progenitors present in mobilized peripheral blood from normal subjects and cancer patients
    Martínez-Jaramillo, G
    Flores-Guzmán, P
    Montesinos, JJ
    Quintana, S
    Bautista, J
    Sánchez-Valle, E
    Nambo, MD
    Mayani, H
    STEM CELLS AND DEVELOPMENT, 2004, 13 (04) : 382 - 389
  • [28] Peripheral blood progenitor uncontrolled-rate freezing: a single pediatric center experience
    Iannalfi, Alberto
    Bambi, Franco
    Tintori, Veronica
    Lacitignola, Laura
    Bernini, Gabriella
    Mariani, Maria Pia
    Sanvito, Maria Chiara
    Pagliai, Francesca
    Brandigi, Francesco
    Muscarella, Elisa
    Tapinassi, Francesca
    Faulkner, Lawrence
    TRANSFUSION, 2007, 47 (12) : 2202 - 2206
  • [29] FACTORS AFFECTING THE MOBILIZATION OF PRIMITIVE AND COMMITTED HEMATOPOIETIC PROGENITORS INTO THE PERIPHERAL-BLOOD OF CANCER-PATIENTS
    SCHNEIDER, JG
    CROWN, JP
    WASSERHEIT, C
    KRITZ, A
    WONG, G
    REICH, L
    NORTON, L
    MOORE, MAS
    BONE MARROW TRANSPLANTATION, 1994, 14 (06) : 877 - 884
  • [30] Increase in primitive hematopoietic cell subsets in the blood of miniature swine mobilized by extended courses of porcine recombinant cytokines.
    Down, JD
    Chang, Q
    Sciortino, T
    Treter, S
    Harper, D
    Gray, HK
    Abraham, S
    Sachs, DH
    Cooper, DKC
    White-Scharf, ME
    BLOOD, 1999, 94 (10) : 329A - 329A